Ceramic Filters

Image Part Number Description / PDF Quantity Rfq
AFC10.7MC

AFC10.7MC

Abracon

CER FILTER 10.7MHZ LOW PASS

0

KFF6637A

KFF6637A

CTS Corporation

CER FILTER 1.88GHZ FM

0

CFWLA455KHFA-B0

CFWLA455KHFA-B0

TOKO / Murata

FILTER

0

772-0065

772-0065

Abracon

RF CERAMIC FILTER

0

773-0055

773-0055

Abracon

RF CERAMIC FILTER

0

SFSKA4M50CF00-R3

SFSKA4M50CF00-R3

TOKO / Murata

FILTER 4.5MHZ 60KHZ BAND SMD

0

CDALF10M7GA069-A0

CDALF10M7GA069-A0

TOKO / Murata

DISCR RAD FOR SONY CXA1538M/N/S

0

AFC10.7MA-A

AFC10.7MA-A

Abracon

CER FILTER 10.7MHZ LOW PASS

0

CFWKA455KEFA004-R0

CFWKA455KEFA004-R0

TOKO / Murata

FILTER

0

CFWLA455KGFA-B0

CFWLA455KGFA-B0

TOKO / Murata

FILTER

0

SFECS10M7HA00-R0

SFECS10M7HA00-R0

TOKO / Murata

FILTER 10.7MHZ 180KHZ BANDWIDTH

0

SFELA10M7FA00-B0

SFELA10M7FA00-B0

TOKO / Murata

CER FILTER 10.7MHZ FM

0

SFECS10M8RF00-R0

SFECS10M8RF00-R0

TOKO / Murata

FILTER 10.8MHZ SMD

0

954-5.5M-D

954-5.5M-D

Abracon

CERAMIC DISCRIMINATOR

0

AFC10.7MS30

AFC10.7MS30

Abracon

CER FILTER 10.7MHZ LOW PASS

0

LFB2H2G45SG7A135

LFB2H2G45SG7A135

TOKO / Murata

FILTER CER BANDPASS 2.45GHZ SMD

0

773-0060

773-0060

Abracon

RF CERAMIC FILTER

0

L10.7 MS3A10

L10.7 MS3A10

ECS Inc. International

CERM FILTER 10.7MHZ THRU HOLE

0

CFWLA455KF1Y-B0

CFWLA455KF1Y-B0

TOKO / Murata

FILTER

0

SFELA10M7GA00-B0

SFELA10M7GA00-B0

TOKO / Murata

CER FILTER 10.7MHZ FM

0

Ceramic Filters

1. Overview

Ceramic filters are electronic components utilizing ceramic materials' dielectric or piezoelectric properties to selectively pass or reject specific frequency bands. Their high Q-factor, compact size, and temperature stability make them critical in RF/microwave signal processing systems. Modern wireless communication, IoT devices, and industrial sensors rely on ceramic filters for signal integrity and interference suppression.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Dielectric Ceramic FiltersHigh permittivity, low loss tangent, suitable for GHz-range filtering5G base stations, WLAN routers
Piezoelectric Ceramic FiltersConvert electrical/mechanical energy, precise frequency controlUltrasonic cleaners, medical imaging
Monolithic Ceramic FiltersIntegrated multilayer structure, wide bandwidthAutomotive radar, GPS modules
LTCC FiltersLow-temperature co-fired ceramic, multilayer integrationSmartphones, wearable devices

3. Structure and Composition

Typical ceramic filter structures include:

  • Ceramic substrate: Alumina (Al O ), Zirconia (ZrO ), or Titanate materials
  • Conductive elements: Silver/palladium electrodes with precise patterning
  • Encapsulation: Epoxy or metal housing for environmental protection
  • Temperature compensation: Special dopants to stabilize frequency drift

Cross-sectional design optimizes electromagnetic field distribution through resonator coupling.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperational bandwidth (MHz-GHz)Determines application suitability
Insertion LossSignal attenuation in passband (0.5-5 dB)Impacts system sensitivity
Bandwidth (BW)3dB bandwidth (1-1000 MHz)Defines frequency selectivity
Temperature Stability 50 ppm/ C typicalEnsures operational reliability
Power Handling1-100 W maximumLimits in high-power applications

5. Application Fields

Major application areas:

  • Telecommunications: 5G NR filters, Wi-Fi 6E front-end modules
  • Automotive: 77GHz millimeter-wave radar systems
  • Medical: MRI machine RF coils and ultrasound probes
  • Industrial: Wireless sensor networks for predictive maintenance

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Murata ManufacturingNFU087HC Series0.6-6.0 GHz, 1.0dB insertion loss
TDK CorporationCKF1010 SeriesGPS L1/L2 dual-band filtering
Kemet ElectronicsKC_LF SeriesLTCC technology for IoT devices
Qorvo Inc.QM780035G massive MIMO filter array

7. Selection Guidelines

Key selection factors:

  1. Match frequency specifications with system requirements
  2. Evaluate power handling in high-power applications
  3. Consider temperature stability for harsh environments
  4. Verify packaging compatibility (SMD/BGA/connectorized)
  5. Assess cost-performance balance for volume production

8. Industry Trends

Emerging trends include:

  • Sub-6GHz and mmWave filter development for 6G
  • AI-driven filter design optimization
  • Nano-ceramic materials for higher Q-factors (Q>10,000)
  • Integration with antenna systems (Antenna-in-Package)
  • Environmental compliance (RoHS, REACH)

Market forecasts predict 8.2% CAGR through 2030, driven by 5G infrastructure and automotive radar demand.

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